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"吊索"可使中性粒细胞在高切变下滚动。

'Slings' enable neutrophil rolling at high shear.

机构信息

Division of Inflammation Biology, La Jolla Institute for Allergy and Immunology, La Jolla, California 92037, USA.

出版信息

Nature. 2012 Aug 16;488(7411):399-403. doi: 10.1038/nature11248.

Abstract

Most leukocytes can roll along the walls of venules at low shear stress (1 dyn cm−2), but neutrophils have the ability to roll at tenfold higher shear stress in microvessels in vivo. The mechanisms involved in this shear-resistant rolling are known to involve cell flattening and pulling of long membrane tethers at the rear. Here we show that these long tethers do not retract as postulated, but instead persist and appear as 'slings' at the front of rolling cells. We demonstrate slings in a model of acute inflammation in vivo and on P-selectin in vitro, where P-selectin-glycoprotein-ligand-1 (PSGL-1) is found in discrete sticky patches whereas LFA-1 is expressed over the entire length on slings. As neutrophils roll forward, slings wrap around the rolling cells and undergo a step-wise peeling from the P-selectin substrate enabled by the failure of PSGL-1 patches under hydrodynamic forces. The 'step-wise peeling of slings' is distinct from the 'pulling of tethers' reported previously. Each sling effectively lays out a cell-autonomous adhesive substrate in front of neutrophils rolling at high shear stress during inflammation.

摘要

大多数白细胞可以在低切应力(1 dyn cm-2)下沿小静脉壁滚动,但中性粒细胞在体内微脉管中具有在十倍高切应力下滚动的能力。已知涉及这种抗切应力滚动的机制涉及细胞变平以及在后部拉动长膜系绳。在这里,我们表明这些长系绳不会如假设那样缩回,而是持续存在并在滚动细胞的前部呈现为“吊索”。我们在体内急性炎症模型和体外 P-选择素上证明了吊索的存在,其中 P-选择素糖蛋白配体-1(PSGL-1)存在于离散的粘性斑块中,而 LFA-1 在吊索上全长表达。随着中性粒细胞向前滚动,吊索缠绕在滚动的细胞周围,并在由水动力下 PSGL-1 斑块失效而使 P-选择素底物能够进行的逐步剥离中从 P-选择素底物上逐步剥离。“吊索的逐步剥离”与之前报道的“系绳的拉动”不同。在炎症期间,在高切应力下滚动的中性粒细胞的每个吊索都有效地在其前面铺设了自主的粘附基质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6fff/3433404/c3279fe62ce9/nihms379830f1.jpg

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